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Sensitivity/Uncertainty Analysis for BWR Configurations of Exercise I-2 of UAM Benchmark

机译:UAM基准练习I-2的BWR配置的灵敏度/不确定性分析

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摘要

In order to evaluate the uncertainties in prediction of lattice-averaged parameters, input data of core neutronics codes, Exercise I-2 of the OECD benchmark for uncertainty anal-ysis in modeling (UAM) was proposed. This work aims to perform a sensitivity/uncertainty analysis of the BWR configurations defined in the benchmark for the purpose of Exercise I-2. Criticality calculations are done for a 7x7 BWR fresh fuel assembly at HFP in four configurations: single unrodded fuel assembly, rodded fuel assembly, assembly/reflector and assembly in a color-set. The SCALE6.1 code package is used to propagate cross section covariance data through lattice physics calculations to both k-effective and two-group assembly-homogenized cross sec-tions uncertainties. Computed sensitivities and uncertainties for all configurations are analyzed and compared. It was found that uncertainties are very similar for the four test-problems, showing that the influence of the assembly environment on uncertainty prediction is very small.
机译:为了评估晶格平均参数预测中的不确定性,核心中子学代码的输入数据,OECD建模不确定性分析基准(UAM)的练习I-2。这项工作旨在针对练习I-2的目的对基准中定义的BWR配置执行灵敏度/不确定性分析。对于HFP的7x7 BWR新鲜燃料组件,在四种配置下进行了临界计算:单个无杆燃料组件,杆状燃料组件,组件/反射镜和彩色组。 SCALE6.1代码包用于通过晶格物理计算将横截面协方差数据传播到k有效和两组装配均质的横截面不确定性中。分析并比较了所有配置的计算灵敏度和不确定性。结果发现,对于四个测试问题,不确定性非常相似,这表明装配环境对不确定性预测的影响很小。

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